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首页> 外文期刊>Low temperature physics: Simultaneous Russian - English publication >Theory of low-temperature elasticity of amorphous polymers: Deformation at a constant rate and relaxation of deforming stress
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Theory of low-temperature elasticity of amorphous polymers: Deformation at a constant rate and relaxation of deforming stress

机译:无定形聚合物的低温弹性理论:恒定速率变形和变形应力松弛

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摘要

The effect of temperature variations over a wide range on the rheological properties of amorphous polymers with high rubber-like elasticity (elastomers) is discussed. A theoretical study of the transition from the deformation state of a warm elastomer to the state of a frozen one, the effects of structural-strain glass transition and forced elasticity was done. Two types of mechanical testing of polymer samples are considered in detail: slow tensile deformation at a constant rate and relaxation of the deforming stress after deformation stops. The study was carried out on the basis of the previously proposed molecular-kinetic model of the processes of highly elastic deformation of amorphous polymers and the corresponding nonlinear rheological equation (V. D. Natsik and H. V. Rusakova, Fiz. Nizk. Temp. 48, 281 (2022) [Low Temp. Phys. 48, 253 (2022)]).
机译:在宽温度变化的影响非晶的流变特性与高弹性橡胶聚合物(弹性体)进行了探讨。的变形状态的过渡温暖的弹性体冻结的状态,玻璃化转变和总体变形的影响迫使弹性。聚合物样品的机械测试详细考虑:慢拉伸变形变形的恒定速率和放松应力变形后停止。前面的基础上进行提出了分子动力学模型的过程高非晶的弹性变形聚合物和相应的非线性(V . d . Natsik和h V流变方程。48岁的临时。253(2022)])。

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